首页> 美国卫生研究院文献>PLoS Pathogens >The Structure of the RNA-Dependent RNA Polymerase of a Permutotetravirus Suggests a Link between Primer-Dependent and Primer-Independent Polymerases
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The Structure of the RNA-Dependent RNA Polymerase of a Permutotetravirus Suggests a Link between Primer-Dependent and Primer-Independent Polymerases

机译:Permutotetravirus RNA依赖的RNA聚合酶的结构表明引物依赖和独立于引物的聚合酶之间的联系。

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摘要

Thosea asigna virus (TaV), an insect virus belonging to the Permutatetraviridae family, has a positive-sense single-stranded RNA (ssRNA) genome with two overlapping open reading frames, encoding for the replicase and capsid proteins. The particular TaV replicase includes a structurally unique RNA-dependent RNA polymerase (RdRP) with a sequence permutation in the palm sub-domain, where the active site is anchored. This non-canonical arrangement of the RdRP palm is also found in double-stranded RNA viruses of the Birnaviridae family. Both virus families also share a conserved VPg sequence motif at the polymerase N-terminus which in birnaviruses appears to be used to covalently link a fraction of the replicase molecules to the 5’-end of the genomic segments. Birnavirus VPgs are presumed to be used as primers for replication initiation. Here we have solved the crystal structure of the TaV RdRP, the first non-canonical RdRP of a ssRNA virus, in its apo- form and bound to different substrates. The enzyme arranges as a stable dimer maintained by mutual interactions between the active site cleft of one molecule and the flexible N-terminal tail of the symmetrically related RdRP. The latter, partially mimicking the RNA template backbone, is involved in regulating the polymerization activity. As expected from previous sequence-based bioinformatics predictions, the overall architecture of the TaV enzyme shows important resemblances with birnavirus polymerases. In addition, structural comparisons and biochemical analyses reveal unexpected similarities between the TaV RdRP and those of Flaviviruses. In particular, a long loop protruding from the thumb domain towards the central enzyme cavity appears to act as a platform for de novo initiation of RNA replication. Our findings strongly suggest an unexpected evolutionary relationship between the RdRPs encoded by these distant ssRNA virus groups.
机译:那些杂种虫病毒(TaV)是一种属于Permutatetraviridae家族的昆虫病毒,其正链单链RNA(ssRNA)基因组具有两个重叠的开放阅读框,编码复制酶和衣壳蛋白。特定的TaV复制酶包括结构独特的RNA依赖性RNA聚合酶(RdRP),该序列在手掌子域中排列有序列,其中固定了活性位点。在Birnaviridae家族的双链RNA病毒中也发现了RdRP棕榈的这种非经典排列。这两个病毒家族还在聚合酶N末端共享一个保守的VPg序列基序,在双歧病毒中,这似乎被用来将一部分复制酶分子共价连接到基因组片段的5'末端。据推测,鼻病毒VPgs可用作复制起始的引物。在这里,我们已经解决了TaV RdRP的晶体结构,它是ssRNA病毒的第一个非典型RdRP,呈无定形并结合到不同的底物上。该酶排列成稳定的二聚体,通过一个分子的活性位点裂口和对称相关的RdRP的柔性N末端尾巴之间的相互作用保持。后者部分模仿RNA模板骨架,参与调节聚合活性。正如先前基于序列的生物信息学预测所期望的那样,TaV酶的总体结构与双歧杆菌病毒聚合酶表现出重要的相似之处。此外,结构比较和生化分析揭示了TaV RdRP与黄病毒之间的出乎意料的相似性。特别地,从拇指结构域向中央酶腔突出的长环似乎充当了从头开始RNA复制的平台。我们的发现强烈暗示这些遥远的ssRNA病毒基团编码的RdRP之间存在出乎意料的进化关系。

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